dune-common  2.11
Public Types | Public Member Functions | Static Public Attributes | Related Functions | List of all members
Dune::DynamicVector< K, Allocator > Class Template Reference

Construct a vector with a dynamic size. More...

#include <dune/common/dynvector.hh>

Inheritance diagram for Dune::DynamicVector< K, Allocator >:
Inheritance graph

Public Types

typedef Base::size_type size_type
 
typedef Base::value_type value_type
 
typedef std::vector< K, Allocator > container_type
 
typedef Allocator allocator_type
 
typedef Traits::derived_type derived_type
 type of derived vector class More...
 
typedef FieldTraits< value_type >::field_type field_type
 export the type representing the field More...
 
typedef Traits::value_type block_type
 export the type representing the components More...
 
typedef DenseIterator< DenseVector, value_typeIterator
 Iterator class for sequential access. More...
 
typedef Iterator iterator
 typedef for stl compliant access More...
 
typedef DenseIterator< const DenseVector, const value_typeConstIterator
 ConstIterator class for sequential access. More...
 
typedef ConstIterator const_iterator
 typedef for stl compliant access More...
 

Public Member Functions

 DynamicVector (const allocator_type &a=allocator_type())
 Constructor making uninitialized vector. More...
 
 DynamicVector (size_type n, const allocator_type &a=allocator_type())
 
 DynamicVector (size_type n, value_type c, const allocator_type &a=allocator_type())
 Constructor making vector with identical coordinates. More...
 
 DynamicVector (std::initializer_list< K > const &l)
 Construct from a std::initializer_list. More...
 
 DynamicVector (const DynamicVector &x)
 Constructor making vector with identical coordinates. More...
 
 DynamicVector (DynamicVector &&x)
 Move constructor. More...
 
template<class T >
 DynamicVector (const DynamicVector< T, Allocator > &x)
 
template<class X >
 DynamicVector (const DenseVector< X > &x, const allocator_type &a=allocator_type())
 Copy constructor from another DenseVector. More...
 
DynamicVectoroperator= (const DynamicVector &other)
 Copy assignment operator. More...
 
DynamicVectoroperator= (DynamicVector &&other)
 Move assignment operator. More...
 
size_type capacity () const
 Number of elements for which memory has been allocated. More...
 
void resize (size_type n, value_type c=value_type())
 
void reserve (size_type n)
 
size_type size () const
 
K & operator[] (size_type i)
 
const K & operator[] (size_type i) const
 
K * data () noexcept
 return pointer to underlying array More...
 
const K * data () const noexcept
 return pointer to underlying array More...
 
const container_typecontainer () const
 
container_typecontainer ()
 
constexpr value_typefront ()
 return reference to first element More...
 
constexpr const value_typefront () const
 return reference to first element More...
 
constexpr value_typeback ()
 return reference to last element More...
 
constexpr const value_typeback () const
 return reference to last element More...
 
constexpr bool empty () const
 checks whether the container is empty More...
 
constexpr Iterator begin ()
 begin iterator More...
 
constexpr ConstIterator begin () const
 begin ConstIterator More...
 
constexpr Iterator end ()
 end iterator More...
 
constexpr ConstIterator end () const
 end ConstIterator More...
 
constexpr Iterator beforeEnd ()
 
constexpr ConstIterator beforeEnd () const
 
constexpr Iterator beforeBegin ()
 
constexpr ConstIterator beforeBegin () const
 
constexpr Iterator find (size_type i)
 return iterator to given element or end() More...
 
constexpr ConstIterator find (size_type i) const
 return iterator to given element or end() More...
 
constexpr derived_typeoperator+= (const DenseVector< Other > &x)
 vector space addition More...
 
constexpr std::enable_if< std::is_convertible< ValueType, value_type >::value, derived_type >::type & operator+= (const ValueType &kk)
 vector space add scalar to all comps More...
 
constexpr derived_typeoperator-= (const DenseVector< Other > &x)
 vector space subtraction More...
 
constexpr std::enable_if< std::is_convertible< ValueType, value_type >::value, derived_type >::type & operator-= (const ValueType &kk)
 vector space subtract scalar from all comps More...
 
constexpr derived_type operator+ (const DenseVector< Other > &b) const
 Binary vector addition. More...
 
constexpr derived_type operator- (const DenseVector< Other > &b) const
 Binary vector subtraction. More...
 
constexpr derived_type operator- () const
 Vector negation. More...
 
constexpr std::enable_if< std::is_convertible< FieldType, field_type >::value, derived_type >::type & operator*= (const FieldType &kk)
 vector space multiplication with scalar More...
 
constexpr std::enable_if< std::is_convertible< FieldType, field_type >::value, derived_type >::type & operator/= (const FieldType &kk)
 vector space division by scalar More...
 
constexpr bool operator== (const DenseVector< Other > &x) const
 Binary vector comparison. More...
 
constexpr bool operator!= (const DenseVector< Other > &x) const
 Binary vector incomparison. More...
 
constexpr derived_typeaxpy (const field_type &a, const DenseVector< Other > &x)
 vector space axpy operation ( *this += a x ) More...
 
constexpr PromotionTraits< field_type, typename DenseVector< Other >::field_type >::PromotedType operator* (const DenseVector< Other > &x) const
 indefinite vector dot product $\left (x^T \cdot y \right)$ which corresponds to Petsc's VecTDot More...
 
constexpr PromotionTraits< field_type, typename DenseVector< Other >::field_type >::PromotedType dot (const DenseVector< Other > &x) const
 vector dot product $\left (x^H \cdot y \right)$ which corresponds to Petsc's VecDot More...
 
constexpr FieldTraits< value_type >::real_type one_norm () const
 one norm (sum over absolute values of entries) More...
 
constexpr FieldTraits< value_type >::real_type one_norm_real () const
 simplified one norm (uses Manhattan norm for complex values) More...
 
constexpr FieldTraits< value_type >::real_type two_norm () const
 two norm sqrt(sum over squared values of entries) More...
 
constexpr FieldTraits< value_type >::real_type two_norm2 () const
 square of two norm (sum over squared values of entries), need for block recursion More...
 
constexpr FieldTraits< vt >::real_type infinity_norm () const
 infinity norm (maximum of absolute values of entries) More...
 
constexpr FieldTraits< vt >::real_type infinity_norm () const
 infinity norm (maximum of absolute values of entries) More...
 
constexpr FieldTraits< vt >::real_type infinity_norm_real () const
 simplified infinity norm (uses Manhattan norm for complex values) More...
 
constexpr FieldTraits< vt >::real_type infinity_norm_real () const
 simplified infinity norm (uses Manhattan norm for complex values) More...
 
constexpr size_type N () const
 number of blocks in the vector (are of size 1 here) More...
 
constexpr size_type dim () const
 dimension of the vector space More...
 

Static Public Attributes

static constexpr int blocklevel
 The number of block levels we contain. This is the leaf, that is, 1. More...
 

Related Functions

(Note that these are not member functions.)

template<class K , class Allocator >
std::istream & operator>> (std::istream &in, DynamicVector< K, Allocator > &v)
 Read a DynamicVector from an input stream. More...
 
std::ostream & operator<< (std::ostream &s, const DenseVector< DynamicVector< K, Allocator > > &v)
 Write a DenseVector to an output stream. More...
 

Detailed Description

template<class K, class Allocator = std::allocator< K >>
class Dune::DynamicVector< K, Allocator >

Construct a vector with a dynamic size.

Template Parameters
Kis the field type (use float, double, complex, etc)
Allocatortype of allocator object used to define the storage allocation model, default Allocator = std::allocator< K >.

Member Typedef Documentation

◆ allocator_type

template<class K, class Allocator = std::allocator< K >>
typedef Allocator Dune::DynamicVector< K, Allocator >::allocator_type

◆ block_type

typedef Traits::value_type Dune::DenseVector< DynamicVector< K, Allocator > >::block_type
inherited

export the type representing the components

◆ const_iterator

typedef ConstIterator Dune::DenseVector< DynamicVector< K, Allocator > >::const_iterator
inherited

typedef for stl compliant access

◆ ConstIterator

typedef DenseIterator<const DenseVector,const value_type> Dune::DenseVector< DynamicVector< K, Allocator > >::ConstIterator
inherited

ConstIterator class for sequential access.

◆ container_type

template<class K, class Allocator = std::allocator< K >>
typedef std::vector< K, Allocator > Dune::DynamicVector< K, Allocator >::container_type

◆ derived_type

typedef Traits::derived_type Dune::DenseVector< DynamicVector< K, Allocator > >::derived_type
inherited

type of derived vector class

◆ field_type

typedef FieldTraits< value_type >::field_type Dune::DenseVector< DynamicVector< K, Allocator > >::field_type
inherited

export the type representing the field

◆ Iterator

Iterator class for sequential access.

◆ iterator

typedef Iterator Dune::DenseVector< DynamicVector< K, Allocator > >::iterator
inherited

typedef for stl compliant access

◆ size_type

template<class K, class Allocator = std::allocator< K >>
typedef Base::size_type Dune::DynamicVector< K, Allocator >::size_type

◆ value_type

template<class K, class Allocator = std::allocator< K >>
typedef Base::value_type Dune::DynamicVector< K, Allocator >::value_type

Constructor & Destructor Documentation

◆ DynamicVector() [1/8]

template<class K, class Allocator = std::allocator< K >>
Dune::DynamicVector< K, Allocator >::DynamicVector ( const allocator_type a = allocator_type())
inlineexplicit

Constructor making uninitialized vector.

◆ DynamicVector() [2/8]

template<class K, class Allocator = std::allocator< K >>
Dune::DynamicVector< K, Allocator >::DynamicVector ( size_type  n,
const allocator_type a = allocator_type() 
)
inlineexplicit

◆ DynamicVector() [3/8]

template<class K, class Allocator = std::allocator< K >>
Dune::DynamicVector< K, Allocator >::DynamicVector ( size_type  n,
value_type  c,
const allocator_type a = allocator_type() 
)
inline

Constructor making vector with identical coordinates.

◆ DynamicVector() [4/8]

template<class K, class Allocator = std::allocator< K >>
Dune::DynamicVector< K, Allocator >::DynamicVector ( std::initializer_list< K > const &  l)
inline

Construct from a std::initializer_list.

◆ DynamicVector() [5/8]

template<class K, class Allocator = std::allocator< K >>
Dune::DynamicVector< K, Allocator >::DynamicVector ( const DynamicVector< K, Allocator > &  x)
inline

Constructor making vector with identical coordinates.

◆ DynamicVector() [6/8]

template<class K, class Allocator = std::allocator< K >>
Dune::DynamicVector< K, Allocator >::DynamicVector ( DynamicVector< K, Allocator > &&  x)
inline

Move constructor.

◆ DynamicVector() [7/8]

template<class K, class Allocator = std::allocator< K >>
template<class T >
Dune::DynamicVector< K, Allocator >::DynamicVector ( const DynamicVector< T, Allocator > &  x)
inline

◆ DynamicVector() [8/8]

template<class K, class Allocator = std::allocator< K >>
template<class X >
Dune::DynamicVector< K, Allocator >::DynamicVector ( const DenseVector< X > &  x,
const allocator_type a = allocator_type() 
)
inline

Copy constructor from another DenseVector.

Member Function Documentation

◆ axpy()

constexpr derived_type& Dune::DenseVector< DynamicVector< K, Allocator > >::axpy ( const field_type a,
const DenseVector< Other > &  x 
)
inlineinherited

vector space axpy operation ( *this += a x )

◆ back() [1/2]

constexpr value_type& Dune::DenseVector< DynamicVector< K, Allocator > >::back ( )
inlineinherited

return reference to last element

◆ back() [2/2]

constexpr const value_type& Dune::DenseVector< DynamicVector< K, Allocator > >::back ( ) const
inlineinherited

return reference to last element

◆ beforeBegin() [1/2]

constexpr Iterator Dune::DenseVector< DynamicVector< K, Allocator > >::beforeBegin ( )
inlineinherited
Returns
an iterator that is positioned before the first entry of the vector.

◆ beforeBegin() [2/2]

constexpr ConstIterator Dune::DenseVector< DynamicVector< K, Allocator > >::beforeBegin ( ) const
inlineinherited
Returns
an iterator that is positioned before the first entry of the vector.

◆ beforeEnd() [1/2]

constexpr Iterator Dune::DenseVector< DynamicVector< K, Allocator > >::beforeEnd ( )
inlineinherited
Returns
an iterator that is positioned before the end iterator of the vector, i.e. at the last entry.

◆ beforeEnd() [2/2]

constexpr ConstIterator Dune::DenseVector< DynamicVector< K, Allocator > >::beforeEnd ( ) const
inlineinherited
Returns
an iterator that is positioned before the end iterator of the vector. i.e. at the last element

◆ begin() [1/2]

constexpr Iterator Dune::DenseVector< DynamicVector< K, Allocator > >::begin ( )
inlineinherited

begin iterator

◆ begin() [2/2]

constexpr ConstIterator Dune::DenseVector< DynamicVector< K, Allocator > >::begin ( ) const
inlineinherited

begin ConstIterator

◆ capacity()

template<class K, class Allocator = std::allocator< K >>
size_type Dune::DynamicVector< K, Allocator >::capacity ( ) const
inline

Number of elements for which memory has been allocated.

capacity() is always greater than or equal to size().

◆ container() [1/2]

template<class K, class Allocator = std::allocator< K >>
const container_type& Dune::DynamicVector< K, Allocator >::container ( ) const
inline

◆ container() [2/2]

template<class K, class Allocator = std::allocator< K >>
container_type& Dune::DynamicVector< K, Allocator >::container ( )
inline

◆ data() [1/2]

template<class K, class Allocator = std::allocator< K >>
K* Dune::DynamicVector< K, Allocator >::data ( )
inlinenoexcept

return pointer to underlying array

◆ data() [2/2]

template<class K, class Allocator = std::allocator< K >>
const K* Dune::DynamicVector< K, Allocator >::data ( ) const
inlinenoexcept

return pointer to underlying array

◆ dim()

constexpr size_type Dune::DenseVector< DynamicVector< K, Allocator > >::dim ( ) const
inlineinherited

dimension of the vector space

◆ dot()

constexpr PromotionTraits<field_type,typename DenseVector<Other>::field_type>::PromotedType Dune::DenseVector< DynamicVector< K, Allocator > >::dot ( const DenseVector< Other > &  x) const
inlineinherited

vector dot product $\left (x^H \cdot y \right)$ which corresponds to Petsc's VecDot

http://www.mcs.anl.gov/petsc/petsc-current/docs/manualpages/Vec/VecDot.html

Parameters
xother vector
Returns

◆ empty()

constexpr bool Dune::DenseVector< DynamicVector< K, Allocator > >::empty ( ) const
inlineinherited

checks whether the container is empty

◆ end() [1/2]

constexpr Iterator Dune::DenseVector< DynamicVector< K, Allocator > >::end ( )
inlineinherited

end iterator

◆ end() [2/2]

constexpr ConstIterator Dune::DenseVector< DynamicVector< K, Allocator > >::end ( ) const
inlineinherited

end ConstIterator

◆ find() [1/2]

constexpr Iterator Dune::DenseVector< DynamicVector< K, Allocator > >::find ( size_type  i)
inlineinherited

return iterator to given element or end()

◆ find() [2/2]

constexpr ConstIterator Dune::DenseVector< DynamicVector< K, Allocator > >::find ( size_type  i) const
inlineinherited

return iterator to given element or end()

◆ front() [1/2]

constexpr value_type& Dune::DenseVector< DynamicVector< K, Allocator > >::front ( )
inlineinherited

return reference to first element

◆ front() [2/2]

constexpr const value_type& Dune::DenseVector< DynamicVector< K, Allocator > >::front ( ) const
inlineinherited

return reference to first element

◆ infinity_norm() [1/2]

constexpr FieldTraits<vt>::real_type Dune::DenseVector< DynamicVector< K, Allocator > >::infinity_norm ( ) const
inlineinherited

infinity norm (maximum of absolute values of entries)

◆ infinity_norm() [2/2]

constexpr FieldTraits<vt>::real_type Dune::DenseVector< DynamicVector< K, Allocator > >::infinity_norm ( ) const
inlineinherited

infinity norm (maximum of absolute values of entries)

◆ infinity_norm_real() [1/2]

constexpr FieldTraits<vt>::real_type Dune::DenseVector< DynamicVector< K, Allocator > >::infinity_norm_real ( ) const
inlineinherited

simplified infinity norm (uses Manhattan norm for complex values)

◆ infinity_norm_real() [2/2]

constexpr FieldTraits<vt>::real_type Dune::DenseVector< DynamicVector< K, Allocator > >::infinity_norm_real ( ) const
inlineinherited

simplified infinity norm (uses Manhattan norm for complex values)

◆ N()

constexpr size_type Dune::DenseVector< DynamicVector< K, Allocator > >::N ( ) const
inlineinherited

number of blocks in the vector (are of size 1 here)

◆ one_norm()

constexpr FieldTraits<value_type>::real_type Dune::DenseVector< DynamicVector< K, Allocator > >::one_norm ( ) const
inlineinherited

one norm (sum over absolute values of entries)

◆ one_norm_real()

constexpr FieldTraits<value_type>::real_type Dune::DenseVector< DynamicVector< K, Allocator > >::one_norm_real ( ) const
inlineinherited

simplified one norm (uses Manhattan norm for complex values)

◆ operator!=()

constexpr bool Dune::DenseVector< DynamicVector< K, Allocator > >::operator!= ( const DenseVector< Other > &  x) const
inlineinherited

Binary vector incomparison.

◆ operator*()

constexpr PromotionTraits<field_type,typename DenseVector<Other>::field_type>::PromotedType Dune::DenseVector< DynamicVector< K, Allocator > >::operator* ( const DenseVector< Other > &  x) const
inlineinherited

indefinite vector dot product $\left (x^T \cdot y \right)$ which corresponds to Petsc's VecTDot

http://www.mcs.anl.gov/petsc/petsc-current/docs/manualpages/Vec/VecTDot.html

Parameters
xother vector
Returns

◆ operator*=()

constexpr std::enable_if< std::is_convertible<FieldType, field_type>::value, derived_type >::type& Dune::DenseVector< DynamicVector< K, Allocator > >::operator*= ( const FieldType &  kk)
inlineinherited

vector space multiplication with scalar

we use enable_if to avoid an ambiguity, if the function parameter can be converted to field_type implicitly. (see FS#1457)

The function is only enabled, if the parameter is directly convertible to field_type.

◆ operator+()

constexpr derived_type Dune::DenseVector< DynamicVector< K, Allocator > >::operator+ ( const DenseVector< Other > &  b) const
inlineinherited

Binary vector addition.

◆ operator+=() [1/2]

constexpr derived_type& Dune::DenseVector< DynamicVector< K, Allocator > >::operator+= ( const DenseVector< Other > &  x)
inlineinherited

vector space addition

◆ operator+=() [2/2]

constexpr std::enable_if< std::is_convertible<ValueType, value_type>::value, derived_type >::type& Dune::DenseVector< DynamicVector< K, Allocator > >::operator+= ( const ValueType &  kk)
inlineinherited

vector space add scalar to all comps

we use enable_if to avoid an ambiguity, if the function parameter can be converted to value_type implicitly. (see FS#1457)

The function is only enabled, if the parameter is directly convertible to value_type.

◆ operator-() [1/2]

constexpr derived_type Dune::DenseVector< DynamicVector< K, Allocator > >::operator- ( const DenseVector< Other > &  b) const
inlineinherited

Binary vector subtraction.

◆ operator-() [2/2]

constexpr derived_type Dune::DenseVector< DynamicVector< K, Allocator > >::operator- ( ) const
inlineinherited

Vector negation.

◆ operator-=() [1/2]

constexpr derived_type& Dune::DenseVector< DynamicVector< K, Allocator > >::operator-= ( const DenseVector< Other > &  x)
inlineinherited

vector space subtraction

◆ operator-=() [2/2]

constexpr std::enable_if< std::is_convertible<ValueType, value_type>::value, derived_type >::type& Dune::DenseVector< DynamicVector< K, Allocator > >::operator-= ( const ValueType &  kk)
inlineinherited

vector space subtract scalar from all comps

we use enable_if to avoid an ambiguity, if the function parameter can be converted to value_type implicitly. (see FS#1457)

The function is only enabled, if the parameter is directly convertible to value_type.

◆ operator/=()

constexpr std::enable_if< std::is_convertible<FieldType, field_type>::value, derived_type >::type& Dune::DenseVector< DynamicVector< K, Allocator > >::operator/= ( const FieldType &  kk)
inlineinherited

vector space division by scalar

we use enable_if to avoid an ambiguity, if the function parameter can be converted to field_type implicitly. (see FS#1457)

The function is only enabled, if the parameter is directly convertible to field_type.

◆ operator=() [1/2]

template<class K, class Allocator = std::allocator< K >>
DynamicVector& Dune::DynamicVector< K, Allocator >::operator= ( const DynamicVector< K, Allocator > &  other)
inline

Copy assignment operator.

◆ operator=() [2/2]

template<class K, class Allocator = std::allocator< K >>
DynamicVector& Dune::DynamicVector< K, Allocator >::operator= ( DynamicVector< K, Allocator > &&  other)
inline

Move assignment operator.

◆ operator==()

constexpr bool Dune::DenseVector< DynamicVector< K, Allocator > >::operator== ( const DenseVector< Other > &  x) const
inlineinherited

Binary vector comparison.

◆ operator[]() [1/2]

template<class K, class Allocator = std::allocator< K >>
K& Dune::DynamicVector< K, Allocator >::operator[] ( size_type  i)
inline

◆ operator[]() [2/2]

template<class K, class Allocator = std::allocator< K >>
const K& Dune::DynamicVector< K, Allocator >::operator[] ( size_type  i) const
inline

◆ reserve()

template<class K, class Allocator = std::allocator< K >>
void Dune::DynamicVector< K, Allocator >::reserve ( size_type  n)
inline

◆ resize()

template<class K, class Allocator = std::allocator< K >>
void Dune::DynamicVector< K, Allocator >::resize ( size_type  n,
value_type  c = value_type() 
)
inline

◆ size()

template<class K, class Allocator = std::allocator< K >>
size_type Dune::DynamicVector< K, Allocator >::size ( ) const
inline

◆ two_norm()

constexpr FieldTraits<value_type>::real_type Dune::DenseVector< DynamicVector< K, Allocator > >::two_norm ( ) const
inlineinherited

two norm sqrt(sum over squared values of entries)

◆ two_norm2()

constexpr FieldTraits<value_type>::real_type Dune::DenseVector< DynamicVector< K, Allocator > >::two_norm2 ( ) const
inlineinherited

square of two norm (sum over squared values of entries), need for block recursion

Friends And Related Function Documentation

◆ operator<<()

std::ostream & operator<< ( std::ostream &  s,
const DenseVector< DynamicVector< K, Allocator > > &  v 
)
related

Write a DenseVector to an output stream.

Parameters
[in]sstd :: ostream to write to
[in]vDenseVector to write
Returns
the output stream (s)

Member Data Documentation

◆ blocklevel

constexpr int Dune::DenseVector< DynamicVector< K, Allocator > >::blocklevel
staticinherited

The number of block levels we contain. This is the leaf, that is, 1.


The documentation for this class was generated from the following file: